Camera module distributed testing method, system, device and storage medium
By using a distributed testing method for camera modules and leveraging the communication connection between the control unit and local and remote replication units, the problem of uneven computing power distribution in camera module testing is solved, thus improving testing efficiency.
Patent Information
- Application Number
- CN202411852823.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2044-12-16
AI Technical Summary
In existing technologies, uneven distribution of computing power during camera module testing leads to low testing efficiency.
A distributed testing method for camera modules is adopted, which establishes communication connections between the control unit and local and remote replication units, distributes test files, and uses multiple test files to test multiple camera modules.
This ensures full utilization of the computing power of each device, increases the number of camera modules tested per session, and improves testing efficiency.
Smart Images

Figure CN119835402B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of camera testing, in particular to a camera module distributed testing method, system, device and storage medium. BACKGROUND
[0002] The test software calls the camera driver program, acquires and displays the image signal, and directly presents the camera shooting picture. The test software analyzes the parameters such as the definition, color restoration, brightness and contrast of the image, and evaluates the imaging quality of the camera. For example, the definition is measured by detecting the sharpness of the image edge, and the color restoration is evaluated by comparing the shooting color with the actual color. For the functions of the camera such as video recording, audio recording and photographing, the test software checks the generated files after calling these functions, checks whether the recording and storage are normal, and whether the sound and image are synchronized. For the network camera, the test software can scan the network devices in the local area network, find the device information related to the camera, or detect the network traffic mode of the camera to determine whether the network connection and data transmission are normal.
[0003] At present, the common practice in the industry is to encapsulate the functions of turning on, testing and turning off the camera into a test software, that is, one test software controls one camera module, and N test softwares need to be opened to detect N cameras, and a control software is used to control them uniformly. However, the computing power of one control host is limited, which reduces the production efficiency. SUMMARY
[0004] The purpose of the embodiments of the present application is to provide a camera module distributed testing method, system, device and storage medium to solve the problem of uneven distribution of computing power and low testing efficiency when testing the camera module.
[0005] In order to solve the above technical problems, the embodiments of the present application provide a camera module distributed testing method, which adopts the following technical solution, comprising:
[0006] Step 100, a camera module distributed testing system is provided, which comprises a test host, a plurality of remote duplicators; the test host comprises a control unit, a local test unit and a local duplication unit; the remote duplicator comprises a remote test unit and a remote duplication unit; the communication connection between the plurality of remote duplicators and the test host is constructed, and the communication connection between the remote duplicator, the test host and the camera module is constructed;
[0007] Step 200, the control unit transmits the test file to the remote duplication unit through the local duplication unit, and the local duplication unit and the remote duplication unit respectively duplicate the test file according to the computing power to obtain a plurality of duplicated test files.
[0008] Step 300, according to the control unit instructions, the test host and remote copy machine respectively use a plurality of test files to test a plurality of camera modules;
[0009] Wherein, the test file and the camera module to be tested one by one.
[0010] Further, the step 100 includes:
[0011] Step 110, a first communication connection is established between the control unit and the local copy unit;
[0012] Step 120, a second communication connection is established between the local copy unit and the remote copy unit.
[0013] Further, the step 100 further includes:
[0014] Step 130, a third communication connection is established between the control unit and the local test unit;
[0015] Step 140, a fourth communication connection is established between the control unit and the remote test unit;
[0016] Step 150, the local test unit is established between the camera module corresponding to the respective port by the fifth communication connection;
[0017] Step 160, the remote test unit is established between the camera module corresponding to the respective port by the sixth communication connection.
[0018] Further, the step 200 includes:
[0019] Step 210, the control unit transmits a request instruction to the local copy unit through the first communication connection;
[0020] Step 220, according to the request instruction, the local copy unit transmits the test file to the remote copy unit through the second communication connection.
[0021] Further, the step 200 further includes:
[0022] Step 230, the local device computing power is obtained, and according to the local device computing power, the control unit transmits a first copy instruction to the local copy unit through the first communication connection;
[0023] Step 240, according to the first copy instruction, the local copy unit copies a first specified number of test files.
[0024] Further, the step 200 further includes:
[0025] Step 250, respectively acquire each remote computer computing power, according to the remote computer computing power, the control unit transmits the second replication instruction to the local replication unit through the first communication connection, the second communication connection;
[0026] Step 260, according to the second replication instruction, the remote replication unit replicates a second specified number of test files.
[0027] Further, the step 300 includes:
[0028] Step 310, the control unit communicates with the corresponding camera module through the third communication connection and the fifth communication connection, and the local test unit respectively calls the corresponding test file to test the camera module;
[0029] Step 320, the control unit communicates with the corresponding camera module through the fourth communication connection and the sixth communication connection, and the plurality of remote test units respectively call the corresponding test file to test the camera module.
[0030] In order to solve the above technical problems, the embodiment of the application also provides a camera module distributed test system, which adopts the camera module distributed test method of the first aspect, comprising:
[0031] It includes a test host and a plurality of remote computers;
[0032] The test host includes a control unit, a local test unit and a local replication unit;
[0033] The remote computer includes a remote test unit and a remote replication unit;
[0034] The plurality of remote computers are respectively connected with the test host, and the remote computer and the test host are respectively connected with the corresponding camera module;
[0035] The control unit is used for transmitting the test file to the remote replication unit through the local replication unit, sending the replication instruction to the local replication unit and the remote replication unit, and sending the test instruction to the local test unit and the remote test unit;
[0036] The local replication unit and the remote replication unit are used for replicating the received test file according to the replication instruction and the computing power;
[0037] The local test unit and the remote test unit are used for testing the plurality of camera modules according to the test instruction and respectively using the plurality of test files;
[0038] The test file corresponds to the camera module to be tested one by one.
[0039] To solve the above technical problems, the embodiment of the present application also provides a computer device, comprising a memory and a processor, the memory stores computer readable instructions, and the processor executes the computer readable instructions to realize the steps of the camera module distributed test method.
[0040] To solve the above technical problems, the embodiment of the present application also provides a computer readable storage medium, the computer readable storage medium stores computer readable instructions, and the computer readable instructions are executed by the processor to realize the steps of the camera module distributed test method.
[0041] Compared with the prior art, the embodiment of the present application has the following technical effects: the test file is transmitted to the remote replication unit by the local replication unit, the local replication unit and the remote replication unit respectively copy the test file according to the computing power, and the local test unit and the remote test unit respectively test the multiple camera modules by using the multiple test files according to the instruction of the control unit, so that the computing power of each computer is fully utilized, the number of camera modules tested at a time is greatly increased, and the test efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0042] In order to more clearly illustrate the scheme in the present application, the drawings needed in the description of the embodiments of the present application will be briefly introduced below. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of these drawings.
[0043] Figure 1 is a communication connection schematic diagram of the camera module distributed test method in the present application;
[0044] Figure 2 is a test file remote transmission schematic diagram of the camera module distributed test method in the present application;
[0045] Figure 3 is a test file replication schematic diagram of the camera module distributed test method in the present application;
[0046] Figure 4 is a test control principle schematic diagram of the camera module distributed test method in the present application;
[0047] Figure 5 is a flow chart of an embodiment of the camera module distributed test method of the present application;
[0048] Figure 6 is Figure 5 a flow chart of a specific embodiment of step 100 in the present application;
[0049] Figure 7 is Figure 6 a flowchart of one embodiment of the method after step 120 in FIG. 2;
[0050] Figure 8 is Figure 5 a flowchart of one embodiment of the method after step 200 in FIG. 2;
[0051] Figure 9 is Figure 8 a flowchart of one embodiment of the method after step 220 in FIG. 2;
[0052] Figure 10 is Figure 9 a flowchart of one embodiment of the method after step 250 in FIG. 2;
[0053] Figure 11 is Figure 5 a flowchart of one embodiment of the method after step 300 in FIG. 2;
[0054] Figure 12 is a structural schematic diagram of one embodiment of the computer device according to the present application. DETAILED DESCRIPTION
[0055] The technical solutions in the present application will be described clearly and completely below in conjunction with the drawings in the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, other embodiments obtained by those skilled in the art without creative effort, fall within the scope of the present application.
[0056] Reference herein to“an embodiment” means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearances of the phrase that the phrase in various places in the specification are not necessarily all referring to the same embodiment, or are necessarily referring to different or alternative embodiments. It is explicitly contemplated that embodiments described herein can be combined with each other.
[0057] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the terminology used in the specification herein is for describing particular embodiments only and is not intended to be limiting of the application; the use herein of terms such as“comprise”,“comprises” and“comprising” are to be construed in an open, non-exclusive sense, i.e., in the sense of“including, but not limited to”.
[0058] In addition, the terms "first", "second", etc. are used only for descriptive purposes and should not be construed as implying or suggesting relative importance or an indicated number of technical features. Therefore, the features defined as "first", "second", etc. can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0059] The purpose of the embodiments of the present application is to propose a camera module distributed test method, system, device and storage medium to solve the problem of uneven distribution of computing power and low test efficiency when testing the camera module.
[0060] To solve the above technical problems, the embodiments of the present application provide a camera module distributed test method, which adopts the following technical scheme, such as Figure 5 , Figure 5 is a flowchart of an embodiment of a camera module distributed test method of the present application; comprising:
[0061] S100, a camera module distributed test system is provided, including a test host (PC1), a plurality of remote computers (PC2, PC3...PCn), an acquisition control unit (C), a local test unit, a local replication unit (S1), a plurality of remote test units and a plurality of remote replication units (S2, S3,..., Sn), the control unit (C), the local test unit and the local replication unit (S1) run on the test host (PC1), the plurality of remote test units and the plurality of remote replication units (S2, S3,..., Sn) run on the respective remote computers (PC2, PC3...PCn), a communication connection between the plurality of remote computers (PC2, PC3...PCn) and the test host (PC1) is constructed, a communication connection between the remote computers (PC2, PC3...PCn), the test host (PC1) and the camera module is constructed, such as Figure 1 , Figure 1 is a communication connection diagram of the camera module distributed test method in the present application.
[0062] In the embodiment, a plurality of remote computers (PC2, PC3...PCn) are respectively connected in communication with the test host (PC1), the remote computers (PC2, PC3...PCn) and the test host (PC1) are respectively connected in communication with the corresponding camera modules; the control unit (C) is configured to transmit the test file (T0) to the remote replication units (S2, S3,..., Sn) through the local replication unit (S1), send a replication instruction to the local replication unit (S1) and the remote replication units (S2, S3,..., Sn), and send a test instruction to the local test unit and the remote test unit; the local replication unit (S1) and the remote replication units (S2, S3,..., Sn) are configured to replicate the received test file (T0) according to the replication instruction and the computing power; and the local test unit and the remote test unit are configured to test the plurality of camera modules using the plurality of test files respectively according to the test instruction.
[0063] In a preferred embodiment, as Figure 6 , Figure 6 is Figure 5 a flowchart of one specific implementation of S100 in FIG. 1; S100 includes: S110, establishing a first communication connection between the control unit (C) and the local replication unit (S1); S120, establishing a second communication connection between the local replication unit (S1) and the remote replication units (S2, S3,..., Sn). As Figure 1 .
[0064] In the embodiment, as Figure 2 , through the first communication connection, the control unit (C) sends an instruction to the local replication to transmit the test file (T0), and through the second communication connection, the local replication unit (S1) transmits the test file (T0) to the remote replication units (S2, S3,..., Sn) (the remote computers (PC2, PC3...PCn)).
[0065] In a preferred embodiment, as Figure 7 , Figure 7 is Figure 6 a flowchart of one specific implementation after S120 in FIG. 1; S100 further includes: S130, establishing a third communication connection between the control unit (C) and the local test unit; S140, establishing a fourth communication connection between the control unit (C) and the remote test unit; S150, establishing a fifth communication connection between the local test unit and the corresponding camera modules through the respective ports; and S160, establishing a sixth communication connection between the remote test unit and the corresponding camera modules through the respective ports.
[0066] In the embodiment, the control unit (C), the third communication connection, the local test unit, the fifth communication connection, and the camera module form a local test communication chain; the control unit (C), the fourth communication connection, the remote test unit, the sixth communication connection, and the camera module form a remote test communication chain. That is, the control unit (C) controls the test of the camera module connected to all computer devices through the local test unit and the remote test unit.
[0067] S200, the control unit (C) transmits the test file (T0) to the remote replication units (S2, S3,..., Sn) through the local replication unit (S1), and the local replication unit (S1) and the remote replication units (S2, S3,..., Sn) respectively copy a specified number of test files (T0) according to the computing power, and respectively obtain a plurality of copied test files, such as Figure 3 .
[0068] In a preferred embodiment, as Figure 8 , Figure 8 is Figure 5 a flowchart of one specific embodiment of S200 in the embodiment; S200 includes: S210, the control unit (C) transmits a request instruction to the local replication unit (S1) through the first communication connection; S220, according to the request instruction, the local replication unit (S1) transmits the test file (T0) to the remote replication units (S2, S3,..., Sn) through the second communication connection, such as Figure 2 , Figure 2 is a schematic diagram of remote transmission of the test file (T0) in the camera module distributed test method in the application.
[0069] In a preferred embodiment, as Figure 9 , Figure 9 is Figure 8 a flowchart of one specific embodiment after S220 in the embodiment; S200 further includes: S230, obtaining the computing power of the local device, and according to the computing power of the local device, the control unit (C) transmits a first replication instruction to the local replication unit (S1) through the first communication connection; S240, according to the first replication instruction, the local replication unit (S1) replicates a first specified number of test files, such as Figure 3 , Figure 3 is a schematic diagram of test file replication in the camera module distributed test method in the application.
[0070] In the embodiment, the test file (T0) is replicated according to the computing power of the local device, and each test file can test one camera module. When the computing power of the local device is strong, more test files can be replicated so as to simultaneously test more camera modules, and in Figure 3In the embodiment, it is assumed that the computing power of all computing devices is the same, and thus the same number of test files can be copied, i.e., the first specified number can be equal to the second specified number.
[0071] In a preferred embodiment, as shown in Figure 10 , Figure 10 is Figure 9 a flowchart of one specific embodiment of S250 in the embodiment; S200 further includes: S250, respectively acquiring the computing power of each remote replica (PC2, PC3,..., PCn), and according to the computing power of the remote replica (PC2, PC3,..., PCn), the control unit (C) transmits a second replication instruction to the local replication unit (S1) through the first communication connection and the second communication connection; S260, according to the second replication instruction, the remote replication unit (S2, S3,..., Sn) replicates a second specified number of test files.
[0072] S300, according to the instruction of the control unit (C), the test host (PC1) and the remote replica (PC2, PC3,..., PCn) respectively test the plurality of camera modules using the plurality of test files (T0, T1,..., Tn).
[0073] In the embodiment, the test file (T0, T1,..., Tn) corresponds to the camera module to be tested one-to-one.
[0074] In a preferred embodiment, as shown in Figure 11 , Figure 11 is Figure 5 a flowchart of one specific embodiment of S300 in the embodiment; S300 includes:
[0075] S310, the control unit (C) communicates with the corresponding camera module through the third communication connection and the fifth communication connection, and the local test unit respectively calls the corresponding test file (T0, T1,..., Tn) to test the camera module; S320, the control unit (C) communicates with the corresponding camera module through the fourth communication connection and the sixth communication connection, and the plurality of remote test units respectively call the corresponding test file (T0, T1,..., Tn) to test the camera module, as shown in Figure 4 , Figure 4 is a test control principle diagram of the camera module distributed test method in the application.
[0076] In the embodiment, since the test file (T0) is copied, each test file can test one camera module, thereby increasing the number of camera modules tested simultaneously. The test file (T0) is transmitted to the remote replication units (S2, S3,..., Sn) by the local replication unit (S1), and the local replication unit (S1) and the remote replication units (S2, S3,..., Sn) respectively copy the test file (T0) according to the computing power. The local test unit and the remote test unit respectively test the plurality of camera modules using the plurality of test files (T0, T1,..., Tn) according to the instruction of the control unit (C), so that the computing power of each computer (PC2, PC3,..., PCn) is fully utilized, the number of camera modules tested at a time is greatly increased, and the test efficiency is improved.
[0077] To solve the above technical problems, the embodiment of the application further provides a camera module distributed test system, which adopts the camera module distributed test method of the first aspect, and comprises a test host (PC1) and a plurality of remote computers (PC2, PC3,..., PCn).
[0078] The test host (PC1) comprises a control unit (C), a local test unit, and a local replication unit (S1).
[0079] The remote computers (PC2, PC3,..., PCn) comprise remote test units and remote replication units (S2, S3,..., Sn).
[0080] The plurality of remote computers (PC2, PC3,..., PCn) are respectively connected in communication with the test host (PC1), and the remote computers (PC2, PC3,..., PCn) and the test host (PC1) are respectively connected in communication with corresponding camera modules.
[0081] The control unit (C) is configured to transmit the test file (T0) to the remote replication units (S2, S3,..., Sn) through the local replication unit (S1), send a replication instruction to the local replication unit (S1) and the remote replication units (S2, S3,..., Sn), and send a test instruction to the local test unit and the remote test unit.
[0082] The local replication unit (S1) and the remote replication units (S2, S3,..., Sn) are configured to copy the received test file (T0) according to the replication instruction and the computing power.
[0083] The local test unit and the remote test unit are configured to test the plurality of camera modules using the plurality of test files (T0, T1,..., Tn) according to the test instruction.
[0084] The test files (T0, T1,..., Tn) correspond to the camera modules to be tested one by one.
[0085] To solve the above problems, the embodiment of the application further provides a computer device, which adopts the following technical scheme: comprising a processor, a network module and a memory, the processor and the memory are connected with each other through the network module.
[0086] The computer device can be a computer, a server, a workstation or the like, or a mobile device such as a mobile phone, a tablet computer, a vehicle-mounted mobile terminal, or other devices with program execution capability. The internal structure of the computer device can be as shown in Figure 12 Figure 12 is a structural schematic diagram of an embodiment of the computer device according to the application. The computer device comprises a processor, a memory and a network module. The processor of the computer device is configured to provide computing and control capabilities. The memory of the computer device comprises a non-volatile and / or volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, instructions or codes. The internal memory provides an environment for the operating system and the instructions or codes in the non-volatile storage medium. The instructions or codes are executed by the processor to realize the functions or steps of the camera module distributed testing method described above. The network module of the computer device can comprise a network interface and / or a wireless network module, and the computer device can communicate with other devices or service platforms through the network module. In addition, the computer device can further comprise a display screen and an input device, etc.
[0087] The memory is configured to store a computer program, the computer program comprises program instructions, and the processor is configured to call the program instructions. When the processor executes the instructions or codes, the steps of the adaptive parameter efficient fine-tuning method described above are realized.
[0088] The embodiment of the application further provides a computer readable storage medium, which stores a computer program, the computer program comprises program instructions, and the program instructions are executed by the processor to realize the camera module distributed testing method provided by each step in Figures 5 to 11 The specific implementation manner can be referred to the implementation manner provided by each step, which will not be described here.
[0089] The computer readable storage medium can be an internal storage unit of the terminal device or the camera module distributed test device according to any one of the preceding embodiments, for example, a hard disk or a memory of a computer device. The computer readable storage medium can also be an external storage device of the computer device, for example, a plug-in hard disk, a smart media card (SMC), a secure digital (SD) card, a flash card, and the like.
[0090] Further, the computer readable storage medium can include both the internal storage unit and the external storage device of the computer device. The computer readable storage medium is used to store the computer program and other programs and data required by the computer device. The computer readable storage medium can also be used to temporarily store data that has been output or will be output.
[0091] However, it should be understood that all the illustrated components are not required, and more or less components can be implemented. It should be understood by those skilled in the art that the computer device herein is a device capable of automatically performing numerical calculation and / or information processing according to pre-set or stored instructions, and the hardware thereof includes but is not limited to a microprocessor, an application specific integrated circuit (ASIC), a field-programmable gate array (FPGA), a digital signal processor (DSP), an embedded device, and the like.
[0092] The computer device can be a desktop computer, a notebook computer, a palm computer, a cloud server, and the like. The computer device can interact with a user through a keyboard, a mouse, a remote controller, a touchpad, a voice control device, and the like.
[0093] Compared with the prior art, the embodiments of the present application have the following technical effects: the test file (T0) is transmitted to the remote replication units (S2, S3,..., Sn) by the local replication unit (S1), the local replication unit (S1) and the remote replication units (S2, S3,..., Sn) respectively replicate the test file (T0) according to the computing power, and the local test unit and the remote test unit respectively test the plurality of camera modules by using the plurality of test files (T0, T1,..., Tn) according to the instruction of the control unit (C), so that the computing power of each computer (PC2, PC3,..., PCn) is fully utilized, the number of camera modules tested at a time is greatly increased, and the test efficiency is improved.
[0094] The above merely provides the preferred embodiment of the present application, and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall fall within the protection scope of the present application.
Claims
1. A camera module distributed testing method, characterized in that comprising: Step 100, providing a camera module distributed testing system, comprising a test host, a plurality of remote duplicators; The test host comprises a control unit, a local test unit and a local duplication unit; the remote duplicator comprises a remote test unit and a remote duplication unit; the communication connection between the plurality of remote duplicators and the test host is established, and the communication connection between the remote duplicator, the test host and the camera module is established; Step 200, the control unit transmits test files to the remote duplication unit through the local duplication unit, and the local duplication unit and the remote duplication unit respectively copy a specified number of test files according to the computing power to obtain a plurality of copied test files; Step 300, according to the control instruction of the control unit, the test host and the remote duplicator respectively use a plurality of test files to test a plurality of camera modules; The test file corresponds to the camera module to be tested.
2. The camera module distributed testing method of claim 1, wherein, The step 100 comprises: Step 110, a first communication connection is established between the control unit and the local duplication unit; Step 120, a second communication connection is established between the local duplication unit and the remote duplication unit.
3. The camera module distributed testing method of claim 2, wherein, The step 100 further comprises: Step 130, a third communication connection is established between the control unit and the local test unit; Step 140, a fourth communication connection is established between the control unit and the remote test unit; Step 150, a fifth communication connection is established between the local test unit and the corresponding camera module through the respective port; Step 160, a sixth communication connection is established between the remote test unit and the corresponding camera module through the respective port.
4. The camera module distributed testing method of claim 1, wherein, The step 200 comprises: Step 210, the control unit transmits a request instruction to the local duplication unit through the first communication connection; Step 220, according to the request instruction, the local duplication unit transmits the test file to the remote duplication unit through the second communication connection.
5. The camera module distributed testing method of claim 4, wherein, The step 200 further comprises: Step 230, the local device computing power is obtained, and according to the local device computing power, the control unit transmits a first duplication instruction to the local duplication unit through the first communication connection; Step 240, according to the first duplication instruction, the local duplication unit duplicates a first specified number of test files.
6. The camera module distributed testing method of claim 5, wherein, The step 200 further comprises: Step 250, the computing power of each remote duplicator is obtained respectively, and according to the computing power of the remote duplicator, the control unit transmits a second duplication instruction to the local duplication unit through the first communication connection and the second communication connection; Step 260, according to the second duplication instruction, the remote duplication unit duplicates a second specified number of test files.
7. The camera module distributed testing method of claim 1, wherein, The step 300 comprises: Step 310, the control unit communicates with the corresponding camera module through the third communication connection and the fifth communication connection, and the local test unit respectively calls the corresponding test file to test the camera module; In step 320, the control unit communicates with the corresponding camera module through the fourth communication connection and the sixth communication connection. The plurality of remote test units respectively call the corresponding test files to test the camera module.
8. A camera module distributed test system, employing the camera module distributed test method of any one of claims 1-7, wherein, The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device.
9. A computer device, comprising: The application relates to a camera module distributed test method and device.
10. A computer-readable storage medium, characterized in that, The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera module distributed test method and device. The application relates to a camera
Citation Information
Patent Citations
Test method, test device and test equipment for remote replication consistency group
CN111159024A
Auxiliary test method and system for vehicle-mounted camera, and terminal
CN117156124A